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超积累植物与光伏系统集成的最佳配置是什么?
What is the optimal configuration for integrating hyperaccumulating plants with photovoltaic systems to enhance plant development and energy production?
| 作者 | Julien Ancousture · Pierre Leglize · Ya Brigitte Asso · Emile Benizri |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 397 卷 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 储能系统 工商业光伏 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | PV modules have a protective effect on the development of _Noccaea caerulescens_. |
语言:
中文摘要
工业废弃地土壤常受到痕量金属污染,可通过农业采矿技术利用超积累植物修复此类区域,这些植物能够在其地上部分富集金属。然而,该过程在短期内见效缓慢,难以实现盈利。安装光伏(PV)组件可在生物修复期间提高经济效益。因此,本研究旨在确定2023年7月至11月建立的试验场地中,电力生产与超积累植物生长之间的最佳权衡关系。试验场地设置了不透明单晶硅和双面半透明光伏组件,在其下方放置了超积累植物遏蓝菜(Noccaea caerulescens, Nc)的栽培托盘,同时设置未受光伏组件遮荫影响、直接暴露于阳光下的对照托盘作为参考。研究评估了多个参数,包括托盘中的植物覆盖度、Nc的干生物量以及光伏组件的温度。就Nc的覆盖情况而言,生长在光伏组件遮荫下的植株发育程度最高可达无遮荫植株的5.5倍,所有测量指标均显示出植物覆盖度随太阳辐射强度的不同而存在差异。此外,在光伏组件方面,Nc的覆盖似乎降低了组件背面的温度,并在10月份使其性能比提高了18%。结合Nc覆盖状况对太阳辐射与光伏组件升温关系的分析表明,植物覆盖可能通过蒸腾作用有效降低光伏组件的温度。这些结果凸显了管理光伏组件下植物覆盖的重要性,并指出在变化气候条件下进行光伏组件热建模时应考虑植物覆盖的影响。
English Abstract
Abstract Industrial brownfield soils are often contaminated with trace metals, and these areas can be remediated by agromining, using hyperaccumulating plants that can accumulate metals in their aerial parts. However, this process is too slow to be profitable in the short term. The installation of photovoltaic (PV) modules could improve profitability during the bioremediation period. Thus, the objective of this study was to determine the optimal trade-off between electricity production and the development of hyperaccumulating plants in a pilot site set up between July and November 2023. The pilot site consisted of opaque monocrystalline and bifacial semi-transparent PV modules, beneath which culture trays of a hyperaccumulating plant, Noccaea caerulescens (Nc), were placed in addition to reference trays exposed to the sun without shade due to the PV modules. Several parameters were assessed, including the plant cover rate in trays, the dry biomass of Nc and the PV module temperatures. Regarding the Nc cover, plants growing in the shade of a PV module were up to 5.5 times more developed than those without shade, and all the indicators measured allowed plant cover to be differentiated according to the intensity of solar radiation. Furthermore, regarding the PV modules, the cover of Nc seemed to reduce the temperature on the back of the PV modules and improved their performance ratio by 18 % in October. Analysis of the relationship between solar radiation and PV module heating, taking into account the Nc cover, highlighted a potential evapotranspiration effect of the plant cover in reducing the temperature of the PV modules. These results highlighted the importance of managing plant cover under PV modules and taking it into account in the thermal modelling of PV modules in variable climatic conditions.
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SunView 深度解读
该研究揭示光伏组件与植物覆盖的协同效应,对阳光电源SG系列逆变器和智能运维具有重要价值。研究发现植物蒸腾作用可降低组件温度18%并提升发电效率,这为我司1500V系统的热管理优化提供新思路。建议在iSolarCloud平台集成环境因子监测模块,通过MPPT算法动态补偿植被遮挡影响;同时可拓展工商业光伏场景,将组件背面温度纳入预测性维护模型,开发适配农光互补、生态修复等新兴市场的定制化逆变器解决方案,提升系统全生命周期收益。